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Monitoring and thermal performance evaluation of two building envelope solutions in an apartment building

机译:公寓楼两栋建筑信封解决方案的监测与热绩效评价

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A bio-based multi-layer building envelope assembly has been developed for its integration in newly built and retrofitted buildings. Forest-based materials and biocomposite profiles are used as an alternative to fossil-based insulants and metallic framing, providing a well-insulated and low-thermal-bridge technical solution. The wall assembly has been installed as the external envelope of one apartment of a housing block in Donostia-San Sebastián (Basque Country, Spain). A comparative study has been performed for the bio-based wall and the reference wall of the building. Their in-situ thermal resistance has been obtained by means of three different methods: (1) the steady-state average method, (2) a semi-dynamic method from heat balance at the internal surface, and (3) a dynamic multiple regression method. Reasonably consistent results have been obtained with the three methods: a discussion is provided on the influence of measuring periods and boundary conditions. Outputs from this experimental campaign are valuable as a counterpoint to desktop studies and tests under controlled laboratory conditions. Learnings and outputs from the present study should contribute to a better understanding of the in-situ performance of building envelope assemblies and their assessment methods.
机译:已经开发了一种基于生物的多层建筑包络组件,以其在新建和改装建筑物中的集成。基于森林的材料和生物复合型材用作化石的绝缘材料和金属框架的替代方案,提供绝缘绝缘和低热桥技术解决方案。墙壁组件已作为唐斯蒂亚洲 - 圣塞巴斯蒂安(巴斯克州,西班牙巴斯克州)的住房座的一个公寓的外部包络。已经对建筑物的生物墙和参考墙进行了比较研究。它们的原位热阻已经通过三种不同的方法获得:(1)稳态平均方法,(2)从内表面的热平衡的半动态方法,(3)动态多元回归方法。使用这三种方法获得了合理一致的结果:提供了讨论的测量期和边界条件的影响。来自该实验活动的产出作为对受控实验室条件下的桌面研究和测试的对比之点。本研究的学习和产出应更好地了解建筑包络组件的原位表现及其评估方法。

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